Piezoresistive Behavior of a Conductive Polyurethane Based-Foam for Real-Time Structural Monitoring

Author:

Poirot Antoine12ORCID,Bedrici Nacera1,Walrick Jean-Christophe1,Arrigoni Michel2ORCID

Affiliation:

1. ESTACA, ESTACA’Lab—Laval, 53000 Laval, France

2. ENSTA-Bretagne, IRDL, UMR 6027 CNRS, 2 rue François Verny, 29806 Brest, France

Abstract

Smart flexible materials with piezoresistive property are increasingly used in the field of sensors. When embedded in structures, they would allow for in situ structural health monitoring and damage assessment of impact loading, such as crash, bird strikes and ballistic impacts; however, this could not be achieved without a deep characterization of the relation between piezoresistivity and mechanical behavior. The aim of this paper is to study the potential use of the piezoresistivity effect of a conductive foam made of a flexible polyurethane matrix filled with activated carbon for integrated structural health monitoring (SHM) and low-energy impact detection. To do so, polyurethane foam filled with activated carbon, namely PUF-AC, is tested under quasi-static compressions and under a dynamic mechanical analyzer (DMA) with in situ measurements of its electrical resistance. A new relation is proposed for describing the evolution of the resistivity versus strain rate showing that a link exists between electrical sensitivity and viscoelasticity. In addition, a first demonstrative experiment of feasibility of an SHM application using piezoresistive foam embedded in a composite sandwich structure is realized by a low-energy impact (2 J) test.

Publisher

MDPI AG

Subject

Electrical and Electronic Engineering,Biochemistry,Instrumentation,Atomic and Molecular Physics, and Optics,Analytical Chemistry

Reference27 articles.

1. Review of current trends in research and applications of sandwich structures;Birman;Compos. Part B Eng.,2018

2. Elnasri, I. (2006). Comportement des matériaux cellulaires sous impact et de panneaux sandwichs sous perforation dynamique. [Ph.D. Thesis, École Normale Supérieure de Cachan].

3. Numerical modelling of foam-cored sandwich plates under high-velocity impact;Santiuste;Compos. Struct.,2011

4. Global overview on advances in structural health monitoring platforms;Mesquita;J. Civil. Struct. Health Monit.,2016

5. Tayebi, A., and Ul Hoque, M.M. (2003). Design of Experiments Optimization of Embedded MEMS Sensors in Composites for Structural Health Monitoring, Smart Structures and Materials.

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